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NiAl-7.5Cr-2.5Ta-5Co合金的室温摩擦磨损性能
引用本文:王振生,张孟恩,杨双双,郭建亭,周兰章,郭源君,陈志钢,彭 真. NiAl-7.5Cr-2.5Ta-5Co合金的室温摩擦磨损性能[J]. 稀有金属材料与工程, 2015, 44(8): 1909-1914
作者姓名:王振生  张孟恩  杨双双  郭建亭  周兰章  郭源君  陈志钢  彭 真
作者单位:湖南科技大学 先进矿山装备教育部工程研究中心,湖南 湘潭 411201)
基金项目:国家自然科学基金资助 (51101055, 51275167);湖南省自然科学基金 (13JJ8015, 12JJ3048)
摘    要:采用往复摩擦磨损试验方法,研究了不同接触变形状态和摩擦热效应下Ni Al-7.5Cr-2.5Ta-5Co合金的磨损性能与机理。结果表明:弹性接触状态下,变形区域的弹性应力松弛所引起的微小移动可破坏形成的金属结点,其摩擦系数较低;塑性接触状态下,合金磨损表面发生粘着-剪切特征,其摩擦系数较高;随着摩擦热效应的增强,合金摩擦表面自生成的Ni和Co的氧化物膜增多,降低了合金的摩擦系数,当P m·V值大于865 350(N/s·mm)时,合金的摩擦系数小于0.3,表现出良好的自润滑特性。

关 键 词:金属间化合物;NiAl-7.5Cr-2.5Ta-5Co合金;摩擦磨损性能;磨损机制;氧化物膜
收稿时间:2014-08-09

Friction and Wear Properties of NiAl-7.5Cr-2.5Ta-5Co Alloy at Room Temperature
Affiliation:Engineering Research Center of Advanced Mining Equipment, Ministry of Education,,Hunan University of Science and Technology, Xiangtan 411201, China
Abstract:The wear properties and mechanism of NiAl-7.5Cr-2.5Ta-5Co alloy were investigated in different conditions of contact deformation and friction thermal effects. Results show that under the 10 N loading condition, the NiAl-7.5Cr-2.5Ta-5Co alloy is at resilient contact state, and it can offer lower friction coefficient as a result of its tiny motion caused by the elastic stress relaxation of deformation areas which damages the metal bonding. Under the 45~115 N loading condition, the friction coefficient of the alloy increases resulting in its significant adhesion shear phenomenon brought about by the formation of metal nodes between NiAl-2.5Ta-7.5Cr-5Co and Si3N4 during the process of friction and wear. With the increase of Pm·V, the friction coefficient gradually decreases with more oxide layers of nickel and cobalt generated by itself on friction surface, which partially eliminate the contact of alloy and Si3N4. The cobalt element improves the strength and hardness of NiAl-7.5Cr-2.5Ta alloy, and also plays an important role in reducing the friction coefficient of NiAl based alloy
Keywords:intermetallic   NiAl-7.5Cr-2.5Ta-5Co alloy   friction and wear properties   wear mechanism   oxide film
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